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After bypassing treatment, the blood flow velocity and the pressure in the false lumen of aortic dissection are both less than those before the operation.
Abstract—In order to investigate the validity of bypassing treatment for aortic dissection, two-dimensional idealized geometry models of DeBakey III aortic ...
After bypassing treatment, the blood flow velocity and the pressure in the false lumen of aortic dissection are both less than those before the operation.
The velocity of blood flow and the pressure at the entrance area of false lumen and in the false lumen are both less than those before the operation. Bypassing ...
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Paper info. Two-Dimensional Computational Simulation of Bypassed Aortic Dissection with a Blind False Lumen. [Citation Graph (, )][DBLP] Scores and Rank
In order to investigate the validity of bypassing treatment for aortic dissection, two-dimensional idealized geometry models of DeBakey III aortic dissection ...
D'Ancona, J.J. Lee, G. Pilato, A. Amaducci, R. Baglini, et al. Predicting outcome of aortic dissection with patent false lumen by computational flow analysis.
Dec 5, 2013 · Two-dimensional computational simulation of bypassed aortic dissection with a blind false lumen. Proceedings of the 2nd International ...
Two-dimensional computational simulation of bypassed aortic dissection with a blind false lumen. Guan, J; Chu, B; Chang, Y; Qiao, A.
Jun 3, 2021 · We aim to use computational fluid dynamics to investigate the hemodynamic conditions that may predispose to false lumen enlargement in this ...
Missing: Dimensional Bypassed Blind